| Literature DB >> 32364293 |
Jian-Ming Lv1,2, Yao-Hui Gao1, Huan Zhao3, Takayoshi Awakawa4, Ling Liu5, Guo-Dong Chen1, Xin-Sheng Yao1, Dan Hu1, Ikuro Abe4, Hao Gao1.
Abstract
The alkyne is a biologically significant moiety found in many natural products and a versatile functional group widely used in modern chemistry. Recent studies have revealed the biosynthesis of acetylenic bonds in fatty acids and amino acids. However, the molecular basis for the alkynyl moiety in acetylenic prenyl chains occurring in a number of meroterpenoids remains obscure. Here, we identify the biosynthetic gene cluster and characterize the biosynthetic pathway of an acetylenic meroterpenoid biscognienyne B based on heterologous expression, feeding experiments, and in vitro assay. This work shows that the alkyne moiety is constructed by an unprecedented cytochrome P450 enzyme BisI, which shows promiscuous activity towards C5 and C15 prenyl chains. This finding provides an opportunity for discovery of new compounds, featuring acetylenic prenyl chains, through genome mining, and it also expands the enzyme inventory for de novo biosynthesis of alkynes.Entities:
Keywords: alkynes; biosynthesis; cytochromes; enzymes; terpenoids
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Year: 2020 PMID: 32364293 DOI: 10.1002/anie.202004364
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336